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Agrin 通过支持修复形态发生诱导长期的骨软骨再生。

Agrin induces long-term osteochondral regeneration by supporting repair morphogenesis.

机构信息

Centre for Experimental Medicine and Rheumatology, William Harvey Research Institute, Barts and the London School of Medicine and Dentistry, Queen Mary University of London, London EC1M 6BQ, UK.

Arthritis and Regenerative Medicine Laboratory, Aberdeen Centre for Arthritis and Musculoskeletal Health, University of Aberdeen, Aberdeen AB25 2ZD, UK.

出版信息

Sci Transl Med. 2020 Sep 2;12(559). doi: 10.1126/scitranslmed.aax9086.

Abstract

Cartilage loss leads to osteoarthritis, the most common cause of disability for which there is no cure. Cartilage regeneration, therefore, is a priority in medicine. We report that agrin is a potent chondrogenic factor and that a single intraarticular administration of agrin induced long-lasting regeneration of critical-size osteochondral defects in mice, with restoration of tissue architecture and bone-cartilage interface. Agrin attracted joint resident progenitor cells to the site of injury and, through simultaneous activation of CREB and suppression of canonical WNT signaling downstream of β-catenin, induced expression of the chondrogenic stem cell marker GDF5 and differentiation into stable articular chondrocytes, forming stable articular cartilage. In sheep, an agrin-containing collagen gel resulted in long-lasting regeneration of bone and cartilage, which promoted increased ambulatory activity. Our findings support the therapeutic use of agrin for joint surface regeneration.

摘要

软骨缺失会导致骨关节炎,这是目前最常见的致残原因,尚无治愈方法。因此,软骨再生是医学领域的当务之急。我们报告称,聚集蛋白是一种强有力的软骨生成因子,单次关节内给予聚集蛋白可诱导小鼠的临界尺寸骨软骨缺损的长期再生,恢复组织结构和骨软骨界面。聚集蛋白吸引关节驻留祖细胞到损伤部位,并通过同时激活 CREB 和抑制β-catenin 下游的经典 WNT 信号通路,诱导软骨祖细胞标志物 GDF5 的表达,并分化为稳定的关节软骨细胞,形成稳定的关节软骨。在绵羊中,含有聚集蛋白的胶原凝胶可实现骨和软骨的长期再生,从而促进其活动能力的提高。我们的研究结果支持聚集蛋白用于关节表面再生的治疗用途。

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